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分子生物学
IVD分子诊断
细胞培养与分析
蛋白研究
细胞因子
重组蛋白
抗体
高通量测序建库
病原检测UCF系列
生物医药
工具酶
抑制剂激活剂与常用试剂
仪器
耗材

Inhibition of MCCC2 Impedes TNBC Progression by Downregulating Leucine Metabolism-Dependent mTOR Signaling

Rui Chi, Jin Zhang, Zheng Li, Yi Xie, Quanquan Zheng, Jiayi Chen, Yunxia Liu, Fang Gong

Journal:Breast Cancer-Targets and Therapy

IF:3.4

DOI:10.2147/BCTT.S579112

PMID:

Published:2026-03-10

research field:肿瘤学癌症代谢分子生物学信号转导

Abstract

Background Methylcrotonoyl-CoA carboxylase 2 (MCCC2) has been linked to the progression of multiple tumors, whereas the mTOR has a well-documented role in TNBC. However, the contribution of MCCC2 to TNBC progression and its potential regulation of mTOR signaling remains unclear. This study seeks to assess the functional effect of MCCC2 silencing and tumorigenesis of TNBC, and to investigate whether these effects are mediated through modulation of the mTOR signaling pathway in a leucine-dependent manner.Methods The GEPIA database was utilized to assess MCCC2 expression and its prognostic significance in breast cancer. Functional assays were employed to evaluate the biological effects of MCCC2 knockdown. The CPTAC database was used to explore MCCC2-associated signaling pathways. The involvement of the mTOR pathway was further examined by combining MCCC2 knockdown with rapamycin treatment and leucine-deprivation experiments.Results MCCC2 expression was significantly elevated in breast cancer tissues and associated with poor prognosis. Knockdown of MCCC2 in TNBC cells inhibited proliferation, migration, invasion, and tumor growth. Bioinformatic analyses revealed a strong association between MCCC2 and several oncogenic pathways, including mTOR, MYC/MYCN, NRF2, and RTK. Notably, the inhibitory effects of MCCC2 knockdown were reversed by rapamycin and abolished under leucine-free culture conditions, suggesting a leucine-dependent mechanism of mTOR regulation.Conclusion MCCC2 promotes TNBC progression by activating the mTOR signaling pathway in a leucine-dependent manner. Targeting MCCC2 and its metabolic axis may represent a promising therapeutic strategy for TNBC.

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